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Use of dicarboxylic acids in type 2 diabetes

机译:二羧酸在2型糖尿病中的用途

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摘要

Even-number, medium-chain dicarboxylic acids (DAs), naturally occurring in higher plants, are a promising alternative energy substrate. Unlike the homologous fatty acids, DAs are soluble in water as salts. They are β-oxidized, providing acetyl-CoA and succinyl-CoA, the latter being an intermediate of the tricarboxylic acid cycle. Sebacic acid and dodecanedioic acid, DAs with 10 and 12 carbon atoms respectively, provide 6.6 and 7.2kcalg-1 each; therefore, their energy density is intermediate between glucose and fatty acids. Dicarboxylic acids have been proved to be safe in both experimental animals and humans, and their use has recently been proposed in diabetes. Studies in animals and humans with type 2 diabetes showed that oral administration of sebacic acid improved glycaemic control, probably by enhancing insulin sensitivity, and reduced hepatic gluconeogenesis and glucose output. Moreover, dodecanedioic acid intake reduced muscle fatigue during exercise in subjects with type 2 diabetes, suggesting an improvement of energy utilization and 'metabolic flexibility'. In this article, we review the natural sources of DAs, their fate in animals and humans and their effect in improving glucose metabolism in type 2 diabetes.
机译:天然存在于高等植物中的偶数中链二元羧酸(DAs)是一种有前途的替代能源底物。与同源脂肪酸不同,DAs以盐的形式溶于水。它们被β-氧化,提供乙酰基-CoA和琥珀酰-CoA,后者是三羧酸循环的中间体。癸二酸和十二烷二酸分别具有10和12个碳原子的DA分别提供6.6和7.2kcalg-1。因此,它们的能量密度介于葡萄糖和脂肪酸之间。已经证明二羧酸在实验动物和人类中都是安全的,并且最近有人提出在糖尿病中使用它们。对患有2型糖尿病的动物和人类的研究表明,癸二酸的口服给药可以改善血糖控制,这可能是通过增强胰岛素敏感性来实现的,并减少了肝糖异生和葡萄糖输出。此外,十二烷二酸的摄入减少了2型糖尿病患者运动过程中的肌肉疲劳,表明能量利用和“代谢灵活性”得到改善。在本文中,我们综述了DA的天然来源,它们在动物和人类中的命运以及它们在改善2型糖尿病中葡萄糖代谢中的作用。

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